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6a0f9e82 1/*
cc2040f8 2 * Block driver for Connectix / Microsoft Virtual PC images
5fafdf24 3 *
6a0f9e82 4 * Copyright (c) 2005 Alex Beregszaszi
15d35bc5 5 * Copyright (c) 2009 Kevin Wolf <kwolf@suse.de>
5fafdf24 6 *
6a0f9e82
FB
7 * Permission is hereby granted, free of charge, to any person obtaining a copy
8 * of this software and associated documentation files (the "Software"), to deal
9 * in the Software without restriction, including without limitation the rights
10 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
11 * copies of the Software, and to permit persons to whom the Software is
12 * furnished to do so, subject to the following conditions:
13 *
14 * The above copyright notice and this permission notice shall be included in
15 * all copies or substantial portions of the Software.
16 *
17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
18 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
21 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
22 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
23 * THE SOFTWARE.
24 */
80c71a24 25#include "qemu/osdep.h"
faf07963 26#include "qemu-common.h"
737e150e 27#include "block/block_int.h"
b8f45cdf 28#include "sysemu/block-backend.h"
1de7afc9 29#include "qemu/module.h"
caf71f86 30#include "migration/migration.h"
1fe1fa51
CA
31#if defined(CONFIG_UUID)
32#include <uuid/uuid.h>
33#endif
6a0f9e82
FB
34
35/**************************************************************/
36
37#define HEADER_SIZE 512
38
39//#define CACHE
40
2cfacb62
AL
41enum vhd_type {
42 VHD_FIXED = 2,
43 VHD_DYNAMIC = 3,
44 VHD_DIFFERENCING = 4,
45};
46
57c7d9e5
AL
47// Seconds since Jan 1, 2000 0:00:00 (UTC)
48#define VHD_TIMESTAMP_BASE 946684800
49
fb9245c2
JC
50#define VHD_CHS_MAX_C 65535LL
51#define VHD_CHS_MAX_H 16
52#define VHD_CHS_MAX_S 255
53
97f1c45c 54#define VHD_MAX_SECTORS (65535LL * 255 * 255)
fb9245c2
JC
55#define VHD_MAX_GEOMETRY (VHD_CHS_MAX_C * VHD_CHS_MAX_H * VHD_CHS_MAX_S)
56
57#define VPC_OPT_FORCE_SIZE "force_size"
97f1c45c 58
6a0f9e82 59// always big-endian
e54835c0 60typedef struct vhd_footer {
2cfacb62
AL
61 char creator[8]; // "conectix"
62 uint32_t features;
63 uint32_t version;
64
65 // Offset of next header structure, 0xFFFFFFFF if none
66 uint64_t data_offset;
67
68 // Seconds since Jan 1, 2000 0:00:00 (UTC)
69 uint32_t timestamp;
70
71 char creator_app[4]; // "vpc "
72 uint16_t major;
73 uint16_t minor;
74 char creator_os[4]; // "Wi2k"
75
76 uint64_t orig_size;
03671ded 77 uint64_t current_size;
2cfacb62
AL
78
79 uint16_t cyls;
80 uint8_t heads;
81 uint8_t secs_per_cyl;
82
83 uint32_t type;
84
85 // Checksum of the Hard Disk Footer ("one's complement of the sum of all
86 // the bytes in the footer without the checksum field")
87 uint32_t checksum;
88
89 // UUID used to identify a parent hard disk (backing file)
90 uint8_t uuid[16];
91
92 uint8_t in_saved_state;
e54835c0 93} QEMU_PACKED VHDFooter;
b9fa33a6 94
e54835c0 95typedef struct vhd_dyndisk_header {
2cfacb62
AL
96 char magic[8]; // "cxsparse"
97
98 // Offset of next header structure, 0xFFFFFFFF if none
99 uint64_t data_offset;
100
101 // Offset of the Block Allocation Table (BAT)
102 uint64_t table_offset;
103
104 uint32_t version;
105 uint32_t max_table_entries; // 32bit/entry
106
107 // 2 MB by default, must be a power of two
108 uint32_t block_size;
109
110 uint32_t checksum;
111 uint8_t parent_uuid[16];
112 uint32_t parent_timestamp;
113 uint32_t reserved;
114
115 // Backing file name (in UTF-16)
116 uint8_t parent_name[512];
117
118 struct {
119 uint32_t platform;
120 uint32_t data_space;
121 uint32_t data_length;
122 uint32_t reserved;
123 uint64_t data_offset;
124 } parent_locator[8];
e54835c0 125} QEMU_PACKED VHDDynDiskHeader;
6a0f9e82
FB
126
127typedef struct BDRVVPCState {
848c66e8 128 CoMutex lock;
15d35bc5
AL
129 uint8_t footer_buf[HEADER_SIZE];
130 uint64_t free_data_block_offset;
2cfacb62 131 int max_table_entries;
6a0f9e82 132 uint32_t *pagetable;
15d35bc5
AL
133 uint64_t bat_offset;
134 uint64_t last_bitmap_offset;
6a0f9e82 135
2cfacb62 136 uint32_t block_size;
15d35bc5 137 uint32_t bitmap_size;
c540d53a
JC
138 bool force_use_chs;
139 bool force_use_sz;
15d35bc5 140
6a0f9e82
FB
141#ifdef CACHE
142 uint8_t *pageentry_u8;
143 uint32_t *pageentry_u32;
144 uint16_t *pageentry_u16;
3b46e624 145
6a0f9e82
FB
146 uint64_t last_bitmap;
147#endif
612ff3d8
KW
148
149 Error *migration_blocker;
6a0f9e82
FB
150} BDRVVPCState;
151
c540d53a
JC
152#define VPC_OPT_SIZE_CALC "force_size_calc"
153static QemuOptsList vpc_runtime_opts = {
154 .name = "vpc-runtime-opts",
155 .head = QTAILQ_HEAD_INITIALIZER(vpc_runtime_opts.head),
156 .desc = {
157 {
158 .name = VPC_OPT_SIZE_CALC,
159 .type = QEMU_OPT_STRING,
160 .help = "Force disk size calculation to use either CHS geometry, "
161 "or use the disk current_size specified in the VHD footer. "
162 "{chs, current_size}"
163 },
164 { /* end of list */ }
165 }
166};
167
57c7d9e5
AL
168static uint32_t vpc_checksum(uint8_t* buf, size_t size)
169{
170 uint32_t res = 0;
171 int i;
172
173 for (i = 0; i < size; i++)
174 res += buf[i];
175
176 return ~res;
177}
178
179
6a0f9e82
FB
180static int vpc_probe(const uint8_t *buf, int buf_size, const char *filename)
181{
ffe8ab83 182 if (buf_size >= 8 && !strncmp((char *)buf, "conectix", 8))
6a0f9e82 183 return 100;
6a0f9e82
FB
184 return 0;
185}
186
c540d53a
JC
187static void vpc_parse_options(BlockDriverState *bs, QemuOpts *opts,
188 Error **errp)
189{
190 BDRVVPCState *s = bs->opaque;
191 const char *size_calc;
192
193 size_calc = qemu_opt_get(opts, VPC_OPT_SIZE_CALC);
194
195 if (!size_calc) {
196 /* no override, use autodetect only */
197 } else if (!strcmp(size_calc, "current_size")) {
198 s->force_use_sz = true;
199 } else if (!strcmp(size_calc, "chs")) {
200 s->force_use_chs = true;
201 } else {
202 error_setg(errp, "Invalid size calculation mode: '%s'", size_calc);
203 }
204}
205
015a1036
HR
206static int vpc_open(BlockDriverState *bs, QDict *options, int flags,
207 Error **errp)
6a0f9e82
FB
208{
209 BDRVVPCState *s = bs->opaque;
66f82cee 210 int i;
e54835c0
JC
211 VHDFooter *footer;
212 VHDDynDiskHeader *dyndisk_header;
c540d53a
JC
213 QemuOpts *opts = NULL;
214 Error *local_err = NULL;
215 bool use_chs;
b9fa33a6 216 uint8_t buf[HEADER_SIZE];
57c7d9e5 217 uint32_t checksum;
97f1c45c 218 uint64_t computed_size;
b15deac7 219 uint64_t pagetable_size;
24da78db 220 int disk_type = VHD_DYNAMIC;
59294e46 221 int ret;
6a0f9e82 222
c540d53a
JC
223 opts = qemu_opts_create(&vpc_runtime_opts, NULL, 0, &error_abort);
224 qemu_opts_absorb_qdict(opts, options, &local_err);
225 if (local_err) {
226 error_propagate(errp, local_err);
227 ret = -EINVAL;
228 goto fail;
229 }
230
231 vpc_parse_options(bs, opts, &local_err);
232 if (local_err) {
233 error_propagate(errp, local_err);
234 ret = -EINVAL;
235 goto fail;
236 }
237
9a4f4c31 238 ret = bdrv_pread(bs->file->bs, 0, s->footer_buf, HEADER_SIZE);
59294e46 239 if (ret < 0) {
6a0f9e82 240 goto fail;
59294e46 241 }
6a0f9e82 242
e54835c0 243 footer = (VHDFooter *) s->footer_buf;
24da78db 244 if (strncmp(footer->creator, "conectix", 8)) {
9a4f4c31 245 int64_t offset = bdrv_getlength(bs->file->bs);
59294e46
KW
246 if (offset < 0) {
247 ret = offset;
248 goto fail;
249 } else if (offset < HEADER_SIZE) {
250 ret = -EINVAL;
24da78db
CA
251 goto fail;
252 }
59294e46 253
24da78db 254 /* If a fixed disk, the footer is found only at the end of the file */
9a4f4c31 255 ret = bdrv_pread(bs->file->bs, offset-HEADER_SIZE, s->footer_buf,
59294e46
KW
256 HEADER_SIZE);
257 if (ret < 0) {
24da78db
CA
258 goto fail;
259 }
260 if (strncmp(footer->creator, "conectix", 8)) {
76abe407
PB
261 error_setg(errp, "invalid VPC image");
262 ret = -EINVAL;
24da78db
CA
263 goto fail;
264 }
265 disk_type = VHD_FIXED;
266 }
6a0f9e82 267
57c7d9e5
AL
268 checksum = be32_to_cpu(footer->checksum);
269 footer->checksum = 0;
270 if (vpc_checksum(s->footer_buf, HEADER_SIZE) != checksum)
271 fprintf(stderr, "block-vpc: The header checksum of '%s' is "
66f82cee 272 "incorrect.\n", bs->filename);
57c7d9e5 273
c088b691 274 /* Write 'checksum' back to footer, or else will leave it with zero. */
a4127c42 275 footer->checksum = cpu_to_be32(checksum);
c088b691 276
33ccf667
SH
277 // The visible size of a image in Virtual PC depends on the geometry
278 // rather than on the size stored in the footer (the size in the footer
279 // is too large usually)
280 bs->total_sectors = (int64_t)
281 be16_to_cpu(footer->cyls) * footer->heads * footer->secs_per_cyl;
1fa79228 282
c540d53a
JC
283 /* Microsoft Virtual PC and Microsoft Hyper-V produce and read
284 * VHD image sizes differently. VPC will rely on CHS geometry,
285 * while Hyper-V and disk2vhd use the size specified in the footer.
286 *
287 * We use a couple of approaches to try and determine the correct method:
288 * look at the Creator App field, and look for images that have CHS
289 * geometry that is the maximum value.
290 *
291 * If the CHS geometry is the maximum CHS geometry, then we assume that
292 * the size is the footer->current_size to avoid truncation. Otherwise,
293 * we follow the table based on footer->creator_app:
294 *
295 * Known creator apps:
296 * 'vpc ' : CHS Virtual PC (uses disk geometry)
297 * 'qemu' : CHS QEMU (uses disk geometry)
fb9245c2 298 * 'qem2' : current_size QEMU (uses current_size)
c540d53a
JC
299 * 'win ' : current_size Hyper-V
300 * 'd2v ' : current_size Disk2vhd
301 *
302 * The user can override the table values via drive options, however
303 * even with an override we will still use current_size for images
304 * that have CHS geometry of the maximum size.
305 */
306 use_chs = (!!strncmp(footer->creator_app, "win ", 4) &&
fb9245c2 307 !!strncmp(footer->creator_app, "qem2", 4) &&
c540d53a
JC
308 !!strncmp(footer->creator_app, "d2v ", 4)) || s->force_use_chs;
309
310 if (!use_chs || bs->total_sectors == VHD_MAX_GEOMETRY || s->force_use_sz) {
03671ded 311 bs->total_sectors = be64_to_cpu(footer->current_size) /
c540d53a 312 BDRV_SECTOR_SIZE;
0173e7bb
PL
313 }
314
258d2edb 315 /* Allow a maximum disk size of approximately 2 TB */
97f1c45c 316 if (bs->total_sectors >= VHD_MAX_SECTORS) {
59294e46 317 ret = -EFBIG;
efc8243d
SH
318 goto fail;
319 }
320
24da78db 321 if (disk_type == VHD_DYNAMIC) {
9a4f4c31 322 ret = bdrv_pread(bs->file->bs, be64_to_cpu(footer->data_offset), buf,
59294e46
KW
323 HEADER_SIZE);
324 if (ret < 0) {
24da78db
CA
325 goto fail;
326 }
b9fa33a6 327
e54835c0 328 dyndisk_header = (VHDDynDiskHeader *) buf;
6a0f9e82 329
24da78db 330 if (strncmp(dyndisk_header->magic, "cxsparse", 8)) {
59294e46 331 ret = -EINVAL;
24da78db
CA
332 goto fail;
333 }
6a0f9e82 334
24da78db 335 s->block_size = be32_to_cpu(dyndisk_header->block_size);
5e71dfad
KW
336 if (!is_power_of_2(s->block_size) || s->block_size < BDRV_SECTOR_SIZE) {
337 error_setg(errp, "Invalid block size %" PRIu32, s->block_size);
338 ret = -EINVAL;
339 goto fail;
340 }
24da78db 341 s->bitmap_size = ((s->block_size / (8 * 512)) + 511) & ~511;
15d35bc5 342
24da78db 343 s->max_table_entries = be32_to_cpu(dyndisk_header->max_table_entries);
97f1c45c
JC
344
345 if ((bs->total_sectors * 512) / s->block_size > 0xffffffffU) {
346 ret = -EINVAL;
347 goto fail;
348 }
349 if (s->max_table_entries > (VHD_MAX_SECTORS * 512) / s->block_size) {
350 ret = -EINVAL;
351 goto fail;
352 }
353
354 computed_size = (uint64_t) s->max_table_entries * s->block_size;
355 if (computed_size < bs->total_sectors * 512) {
356 ret = -EINVAL;
357 goto fail;
358 }
359
b15deac7
JC
360 if (s->max_table_entries > SIZE_MAX / 4 ||
361 s->max_table_entries > (int) INT_MAX / 4) {
362 error_setg(errp, "Max Table Entries too large (%" PRId32 ")",
363 s->max_table_entries);
364 ret = -EINVAL;
365 goto fail;
366 }
367
368 pagetable_size = (uint64_t) s->max_table_entries * 4;
369
9a4f4c31 370 s->pagetable = qemu_try_blockalign(bs->file->bs, pagetable_size);
5fb09cd5
KW
371 if (s->pagetable == NULL) {
372 ret = -ENOMEM;
373 goto fail;
374 }
b71d1c2e 375
24da78db 376 s->bat_offset = be64_to_cpu(dyndisk_header->table_offset);
59294e46 377
9a4f4c31
KW
378 ret = bdrv_pread(bs->file->bs, s->bat_offset, s->pagetable,
379 pagetable_size);
59294e46 380 if (ret < 0) {
24da78db
CA
381 goto fail;
382 }
b71d1c2e 383
24da78db 384 s->free_data_block_offset =
b15deac7 385 ROUND_UP(s->bat_offset + pagetable_size, 512);
15d35bc5 386
24da78db
CA
387 for (i = 0; i < s->max_table_entries; i++) {
388 be32_to_cpus(&s->pagetable[i]);
389 if (s->pagetable[i] != 0xFFFFFFFF) {
390 int64_t next = (512 * (int64_t) s->pagetable[i]) +
391 s->bitmap_size + s->block_size;
15d35bc5 392
24da78db
CA
393 if (next > s->free_data_block_offset) {
394 s->free_data_block_offset = next;
395 }
396 }
15d35bc5 397 }
15d35bc5 398
9a4f4c31 399 if (s->free_data_block_offset > bdrv_getlength(bs->file->bs)) {
fb8fe35f
PL
400 error_setg(errp, "block-vpc: free_data_block_offset points after "
401 "the end of file. The image has been truncated.");
402 ret = -EINVAL;
403 goto fail;
404 }
405
24da78db 406 s->last_bitmap_offset = (int64_t) -1;
6a0f9e82 407
6a0f9e82 408#ifdef CACHE
24da78db
CA
409 s->pageentry_u8 = g_malloc(512);
410 s->pageentry_u32 = s->pageentry_u8;
411 s->pageentry_u16 = s->pageentry_u8;
412 s->last_pagetable = -1;
6a0f9e82 413#endif
24da78db 414 }
6a0f9e82 415
848c66e8 416 qemu_co_mutex_init(&s->lock);
612ff3d8
KW
417
418 /* Disable migration when VHD images are used */
81e5f78a
AG
419 error_setg(&s->migration_blocker, "The vpc format used by node '%s' "
420 "does not support live migration",
421 bdrv_get_device_or_node_name(bs));
612ff3d8
KW
422 migrate_add_blocker(s->migration_blocker);
423
6a0f9e82 424 return 0;
59294e46
KW
425
426fail:
97f1c45c 427 qemu_vfree(s->pagetable);
59294e46
KW
428#ifdef CACHE
429 g_free(s->pageentry_u8);
430#endif
431 return ret;
6a0f9e82
FB
432}
433
3fe4b700
JC
434static int vpc_reopen_prepare(BDRVReopenState *state,
435 BlockReopenQueue *queue, Error **errp)
436{
437 return 0;
438}
439
b71d1c2e
AL
440/*
441 * Returns the absolute byte offset of the given sector in the image file.
442 * If the sector is not allocated, -1 is returned instead.
15d35bc5
AL
443 *
444 * The parameter write must be 1 if the offset will be used for a write
445 * operation (the block bitmaps is updated then), 0 otherwise.
b71d1c2e 446 */
15d35bc5
AL
447static inline int64_t get_sector_offset(BlockDriverState *bs,
448 int64_t sector_num, int write)
6a0f9e82
FB
449{
450 BDRVVPCState *s = bs->opaque;
451 uint64_t offset = sector_num * 512;
452 uint64_t bitmap_offset, block_offset;
453 uint32_t pagetable_index, pageentry_index;
454
2cfacb62
AL
455 pagetable_index = offset / s->block_size;
456 pageentry_index = (offset % s->block_size) / 512;
3b46e624 457
15d35bc5
AL
458 if (pagetable_index >= s->max_table_entries || s->pagetable[pagetable_index] == 0xffffffff)
459 return -1; // not allocated
6a0f9e82 460
378e2aea 461 bitmap_offset = 512 * (uint64_t) s->pagetable[pagetable_index];
15d35bc5
AL
462 block_offset = bitmap_offset + s->bitmap_size + (512 * pageentry_index);
463
464 // We must ensure that we don't write to any sectors which are marked as
465 // unused in the bitmap. We get away with setting all bits in the block
466 // bitmap each time we write to a new block. This might cause Virtual PC to
467 // miss sparse read optimization, but it's not a problem in terms of
468 // correctness.
469 if (write && (s->last_bitmap_offset != bitmap_offset)) {
470 uint8_t bitmap[s->bitmap_size];
471
472 s->last_bitmap_offset = bitmap_offset;
473 memset(bitmap, 0xff, s->bitmap_size);
9a4f4c31 474 bdrv_pwrite_sync(bs->file->bs, bitmap_offset, bitmap, s->bitmap_size);
15d35bc5 475 }
3b46e624 476
b71d1c2e 477 return block_offset;
6a0f9e82
FB
478}
479
15d35bc5
AL
480/*
481 * Writes the footer to the end of the image file. This is needed when the
482 * file grows as it overwrites the old footer
483 *
484 * Returns 0 on success and < 0 on error
485 */
486static int rewrite_footer(BlockDriverState* bs)
487{
488 int ret;
489 BDRVVPCState *s = bs->opaque;
490 int64_t offset = s->free_data_block_offset;
491
9a4f4c31 492 ret = bdrv_pwrite_sync(bs->file->bs, offset, s->footer_buf, HEADER_SIZE);
15d35bc5
AL
493 if (ret < 0)
494 return ret;
495
496 return 0;
497}
498
499/*
500 * Allocates a new block. This involves writing a new footer and updating
501 * the Block Allocation Table to use the space at the old end of the image
502 * file (overwriting the old footer)
503 *
504 * Returns the sectors' offset in the image file on success and < 0 on error
505 */
506static int64_t alloc_block(BlockDriverState* bs, int64_t sector_num)
507{
508 BDRVVPCState *s = bs->opaque;
509 int64_t bat_offset;
510 uint32_t index, bat_value;
511 int ret;
512 uint8_t bitmap[s->bitmap_size];
513
514 // Check if sector_num is valid
515 if ((sector_num < 0) || (sector_num > bs->total_sectors))
516 return -1;
517
518 // Write entry into in-memory BAT
519 index = (sector_num * 512) / s->block_size;
520 if (s->pagetable[index] != 0xFFFFFFFF)
521 return -1;
522
523 s->pagetable[index] = s->free_data_block_offset / 512;
524
525 // Initialize the block's bitmap
526 memset(bitmap, 0xff, s->bitmap_size);
9a4f4c31 527 ret = bdrv_pwrite_sync(bs->file->bs, s->free_data_block_offset, bitmap,
078a458e 528 s->bitmap_size);
5bb1cbac
KW
529 if (ret < 0) {
530 return ret;
531 }
15d35bc5
AL
532
533 // Write new footer (the old one will be overwritten)
534 s->free_data_block_offset += s->block_size + s->bitmap_size;
535 ret = rewrite_footer(bs);
536 if (ret < 0)
537 goto fail;
538
539 // Write BAT entry to disk
540 bat_offset = s->bat_offset + (4 * index);
a4127c42 541 bat_value = cpu_to_be32(s->pagetable[index]);
9a4f4c31 542 ret = bdrv_pwrite_sync(bs->file->bs, bat_offset, &bat_value, 4);
15d35bc5
AL
543 if (ret < 0)
544 goto fail;
545
546 return get_sector_offset(bs, sector_num, 0);
547
548fail:
549 s->free_data_block_offset -= (s->block_size + s->bitmap_size);
550 return -1;
551}
552
97b00e28
PB
553static int vpc_get_info(BlockDriverState *bs, BlockDriverInfo *bdi)
554{
555 BDRVVPCState *s = (BDRVVPCState *)bs->opaque;
556 VHDFooter *footer = (VHDFooter *) s->footer_buf;
557
0d4cc3e7 558 if (be32_to_cpu(footer->type) != VHD_FIXED) {
97b00e28
PB
559 bdi->cluster_size = s->block_size;
560 }
561
95de6d70 562 bdi->unallocated_blocks_are_zero = true;
97b00e28
PB
563 return 0;
564}
565
5fafdf24 566static int vpc_read(BlockDriverState *bs, int64_t sector_num,
6a0f9e82
FB
567 uint8_t *buf, int nb_sectors)
568{
6c6ea921 569 BDRVVPCState *s = bs->opaque;
6a0f9e82 570 int ret;
b71d1c2e 571 int64_t offset;
6c6ea921 572 int64_t sectors, sectors_per_block;
e54835c0 573 VHDFooter *footer = (VHDFooter *) s->footer_buf;
6a0f9e82 574
0d4cc3e7 575 if (be32_to_cpu(footer->type) == VHD_FIXED) {
9a4f4c31 576 return bdrv_read(bs->file->bs, sector_num, buf, nb_sectors);
24da78db 577 }
6a0f9e82 578 while (nb_sectors > 0) {
15d35bc5 579 offset = get_sector_offset(bs, sector_num, 0);
b71d1c2e 580
6c6ea921
KW
581 sectors_per_block = s->block_size >> BDRV_SECTOR_BITS;
582 sectors = sectors_per_block - (sector_num % sectors_per_block);
583 if (sectors > nb_sectors) {
584 sectors = nb_sectors;
585 }
586
b71d1c2e 587 if (offset == -1) {
6c6ea921 588 memset(buf, 0, sectors * BDRV_SECTOR_SIZE);
b71d1c2e 589 } else {
9a4f4c31 590 ret = bdrv_pread(bs->file->bs, offset, buf,
6c6ea921
KW
591 sectors * BDRV_SECTOR_SIZE);
592 if (ret != sectors * BDRV_SECTOR_SIZE) {
b71d1c2e 593 return -1;
6c6ea921 594 }
b71d1c2e
AL
595 }
596
6c6ea921
KW
597 nb_sectors -= sectors;
598 sector_num += sectors;
599 buf += sectors * BDRV_SECTOR_SIZE;
6a0f9e82
FB
600 }
601 return 0;
602}
603
2914caa0
PB
604static coroutine_fn int vpc_co_read(BlockDriverState *bs, int64_t sector_num,
605 uint8_t *buf, int nb_sectors)
606{
607 int ret;
608 BDRVVPCState *s = bs->opaque;
609 qemu_co_mutex_lock(&s->lock);
610 ret = vpc_read(bs, sector_num, buf, nb_sectors);
611 qemu_co_mutex_unlock(&s->lock);
612 return ret;
613}
614
15d35bc5
AL
615static int vpc_write(BlockDriverState *bs, int64_t sector_num,
616 const uint8_t *buf, int nb_sectors)
617{
6c6ea921 618 BDRVVPCState *s = bs->opaque;
15d35bc5 619 int64_t offset;
6c6ea921 620 int64_t sectors, sectors_per_block;
15d35bc5 621 int ret;
e54835c0 622 VHDFooter *footer = (VHDFooter *) s->footer_buf;
15d35bc5 623
0d4cc3e7 624 if (be32_to_cpu(footer->type) == VHD_FIXED) {
9a4f4c31 625 return bdrv_write(bs->file->bs, sector_num, buf, nb_sectors);
24da78db 626 }
15d35bc5
AL
627 while (nb_sectors > 0) {
628 offset = get_sector_offset(bs, sector_num, 1);
629
6c6ea921
KW
630 sectors_per_block = s->block_size >> BDRV_SECTOR_BITS;
631 sectors = sectors_per_block - (sector_num % sectors_per_block);
632 if (sectors > nb_sectors) {
633 sectors = nb_sectors;
634 }
635
15d35bc5
AL
636 if (offset == -1) {
637 offset = alloc_block(bs, sector_num);
638 if (offset < 0)
639 return -1;
640 }
641
9a4f4c31
KW
642 ret = bdrv_pwrite(bs->file->bs, offset, buf,
643 sectors * BDRV_SECTOR_SIZE);
6c6ea921 644 if (ret != sectors * BDRV_SECTOR_SIZE) {
15d35bc5 645 return -1;
6c6ea921 646 }
15d35bc5 647
6c6ea921
KW
648 nb_sectors -= sectors;
649 sector_num += sectors;
650 buf += sectors * BDRV_SECTOR_SIZE;
15d35bc5
AL
651 }
652
653 return 0;
654}
655
e183ef75
PB
656static coroutine_fn int vpc_co_write(BlockDriverState *bs, int64_t sector_num,
657 const uint8_t *buf, int nb_sectors)
658{
659 int ret;
660 BDRVVPCState *s = bs->opaque;
661 qemu_co_mutex_lock(&s->lock);
662 ret = vpc_write(bs, sector_num, buf, nb_sectors);
663 qemu_co_mutex_unlock(&s->lock);
664 return ret;
665}
666
0cc84887 667static int64_t coroutine_fn vpc_co_get_block_status(BlockDriverState *bs,
67a0fd2a 668 int64_t sector_num, int nb_sectors, int *pnum, BlockDriverState **file)
0cc84887
KW
669{
670 BDRVVPCState *s = bs->opaque;
671 VHDFooter *footer = (VHDFooter*) s->footer_buf;
2ec711dc 672 int64_t start, offset;
0cc84887
KW
673 bool allocated;
674 int n;
675
676 if (be32_to_cpu(footer->type) == VHD_FIXED) {
677 *pnum = nb_sectors;
7429e207 678 *file = bs->file->bs;
0cc84887
KW
679 return BDRV_BLOCK_RAW | BDRV_BLOCK_OFFSET_VALID | BDRV_BLOCK_DATA |
680 (sector_num << BDRV_SECTOR_BITS);
681 }
682
683 offset = get_sector_offset(bs, sector_num, 0);
684 start = offset;
685 allocated = (offset != -1);
686 *pnum = 0;
687
688 do {
689 /* All sectors in a block are contiguous (without using the bitmap) */
690 n = ROUND_UP(sector_num + 1, s->block_size / BDRV_SECTOR_SIZE)
691 - sector_num;
692 n = MIN(n, nb_sectors);
693
694 *pnum += n;
695 sector_num += n;
696 nb_sectors -= n;
2ec711dc
PL
697 /* *pnum can't be greater than one block for allocated
698 * sectors since there is always a bitmap in between. */
699 if (allocated) {
7429e207 700 *file = bs->file->bs;
2ec711dc
PL
701 return BDRV_BLOCK_DATA | BDRV_BLOCK_OFFSET_VALID | start;
702 }
0cc84887
KW
703 if (nb_sectors == 0) {
704 break;
705 }
0cc84887 706 offset = get_sector_offset(bs, sector_num, 0);
2ec711dc 707 } while (offset == -1);
0cc84887 708
2ec711dc 709 return 0;
0cc84887
KW
710}
711
57c7d9e5
AL
712/*
713 * Calculates the number of cylinders, heads and sectors per cylinder
714 * based on a given number of sectors. This is the algorithm described
715 * in the VHD specification.
716 *
717 * Note that the geometry doesn't always exactly match total_sectors but
718 * may round it down.
6e9ea0c0 719 *
258d2edb
CA
720 * Returns 0 on success, -EFBIG if the size is larger than ~2 TB. Override
721 * the hardware EIDE and ATA-2 limit of 16 heads (max disk size of 127 GB)
722 * and instead allow up to 255 heads.
57c7d9e5 723 */
6e9ea0c0 724static int calculate_geometry(int64_t total_sectors, uint16_t* cyls,
57c7d9e5
AL
725 uint8_t* heads, uint8_t* secs_per_cyl)
726{
727 uint32_t cyls_times_heads;
728
690cbb09 729 total_sectors = MIN(total_sectors, VHD_MAX_GEOMETRY);
57c7d9e5 730
690cbb09 731 if (total_sectors >= 65535LL * 16 * 63) {
57c7d9e5 732 *secs_per_cyl = 255;
690cbb09 733 *heads = 16;
57c7d9e5
AL
734 cyls_times_heads = total_sectors / *secs_per_cyl;
735 } else {
736 *secs_per_cyl = 17;
737 cyls_times_heads = total_sectors / *secs_per_cyl;
738 *heads = (cyls_times_heads + 1023) / 1024;
739
690cbb09 740 if (*heads < 4) {
57c7d9e5 741 *heads = 4;
690cbb09 742 }
57c7d9e5
AL
743
744 if (cyls_times_heads >= (*heads * 1024) || *heads > 16) {
745 *secs_per_cyl = 31;
746 *heads = 16;
747 cyls_times_heads = total_sectors / *secs_per_cyl;
748 }
749
750 if (cyls_times_heads >= (*heads * 1024)) {
751 *secs_per_cyl = 63;
752 *heads = 16;
753 cyls_times_heads = total_sectors / *secs_per_cyl;
754 }
755 }
756
dede4188 757 *cyls = cyls_times_heads / *heads;
6e9ea0c0
AJ
758
759 return 0;
57c7d9e5
AL
760}
761
b8f45cdf 762static int create_dynamic_disk(BlockBackend *blk, uint8_t *buf,
fef6070e 763 int64_t total_sectors)
57c7d9e5 764{
e54835c0
JC
765 VHDDynDiskHeader *dyndisk_header =
766 (VHDDynDiskHeader *) buf;
57c7d9e5 767 size_t block_size, num_bat_entries;
24da78db 768 int i;
fef6070e
JC
769 int ret;
770 int64_t offset = 0;
57c7d9e5 771
57c7d9e5
AL
772 // Write the footer (twice: at the beginning and at the end)
773 block_size = 0x200000;
774 num_bat_entries = (total_sectors + block_size / 512) / (block_size / 512);
775
b8f45cdf 776 ret = blk_pwrite(blk, offset, buf, HEADER_SIZE);
fef6070e 777 if (ret) {
f0ff243a
BS
778 goto fail;
779 }
57c7d9e5 780
fef6070e 781 offset = 1536 + ((num_bat_entries * 4 + 511) & ~511);
b8f45cdf 782 ret = blk_pwrite(blk, offset, buf, HEADER_SIZE);
fef6070e 783 if (ret < 0) {
f0ff243a
BS
784 goto fail;
785 }
57c7d9e5
AL
786
787 // Write the initial BAT
fef6070e 788 offset = 3 * 512;
57c7d9e5
AL
789
790 memset(buf, 0xFF, 512);
f0ff243a 791 for (i = 0; i < (num_bat_entries * 4 + 511) / 512; i++) {
b8f45cdf 792 ret = blk_pwrite(blk, offset, buf, 512);
fef6070e 793 if (ret < 0) {
f0ff243a
BS
794 goto fail;
795 }
fef6070e 796 offset += 512;
f0ff243a 797 }
57c7d9e5 798
57c7d9e5
AL
799 // Prepare the Dynamic Disk Header
800 memset(buf, 0, 1024);
801
5ec4d682 802 memcpy(dyndisk_header->magic, "cxsparse", 8);
57c7d9e5 803
78439f6a
CA
804 /*
805 * Note: The spec is actually wrong here for data_offset, it says
806 * 0xFFFFFFFF, but MS tools expect all 64 bits to be set.
807 */
a4127c42
SH
808 dyndisk_header->data_offset = cpu_to_be64(0xFFFFFFFFFFFFFFFFULL);
809 dyndisk_header->table_offset = cpu_to_be64(3 * 512);
810 dyndisk_header->version = cpu_to_be32(0x00010000);
811 dyndisk_header->block_size = cpu_to_be32(block_size);
812 dyndisk_header->max_table_entries = cpu_to_be32(num_bat_entries);
57c7d9e5 813
a4127c42 814 dyndisk_header->checksum = cpu_to_be32(vpc_checksum(buf, 1024));
57c7d9e5
AL
815
816 // Write the header
fef6070e 817 offset = 512;
57c7d9e5 818
b8f45cdf 819 ret = blk_pwrite(blk, offset, buf, 1024);
fef6070e 820 if (ret < 0) {
f0ff243a
BS
821 goto fail;
822 }
f0ff243a 823
24da78db
CA
824 fail:
825 return ret;
826}
827
b8f45cdf 828static int create_fixed_disk(BlockBackend *blk, uint8_t *buf,
fef6070e 829 int64_t total_size)
24da78db 830{
fef6070e 831 int ret;
24da78db
CA
832
833 /* Add footer to total size */
fef6070e
JC
834 total_size += HEADER_SIZE;
835
b8f45cdf 836 ret = blk_truncate(blk, total_size);
fef6070e
JC
837 if (ret < 0) {
838 return ret;
24da78db
CA
839 }
840
b8f45cdf 841 ret = blk_pwrite(blk, total_size - HEADER_SIZE, buf, HEADER_SIZE);
fef6070e
JC
842 if (ret < 0) {
843 return ret;
844 }
24da78db 845
24da78db
CA
846 return ret;
847}
848
fec9921f 849static int vpc_create(const char *filename, QemuOpts *opts, Error **errp)
24da78db
CA
850{
851 uint8_t buf[1024];
e54835c0 852 VHDFooter *footer = (VHDFooter *) buf;
fec9921f 853 char *disk_type_param;
fef6070e 854 int i;
24da78db
CA
855 uint16_t cyls = 0;
856 uint8_t heads = 0;
857 uint8_t secs_per_cyl = 0;
858 int64_t total_sectors;
859 int64_t total_size;
860 int disk_type;
861 int ret = -EIO;
fb9245c2 862 bool force_size;
fef6070e 863 Error *local_err = NULL;
b8f45cdf 864 BlockBackend *blk = NULL;
24da78db
CA
865
866 /* Read out options */
c2eb918e
HT
867 total_size = ROUND_UP(qemu_opt_get_size_del(opts, BLOCK_OPT_SIZE, 0),
868 BDRV_SECTOR_SIZE);
fec9921f
CL
869 disk_type_param = qemu_opt_get_del(opts, BLOCK_OPT_SUBFMT);
870 if (disk_type_param) {
871 if (!strcmp(disk_type_param, "dynamic")) {
24da78db 872 disk_type = VHD_DYNAMIC;
fec9921f 873 } else if (!strcmp(disk_type_param, "fixed")) {
24da78db
CA
874 disk_type = VHD_FIXED;
875 } else {
fec9921f
CL
876 ret = -EINVAL;
877 goto out;
24da78db
CA
878 }
879 } else {
880 disk_type = VHD_DYNAMIC;
881 }
882
fb9245c2
JC
883 force_size = qemu_opt_get_bool_del(opts, VPC_OPT_FORCE_SIZE, false);
884
fef6070e
JC
885 ret = bdrv_create_file(filename, opts, &local_err);
886 if (ret < 0) {
887 error_propagate(errp, local_err);
fec9921f 888 goto out;
24da78db 889 }
b8f45cdf
KW
890
891 blk = blk_new_open("image", filename, NULL, NULL,
892 BDRV_O_RDWR | BDRV_O_CACHE_WB | BDRV_O_PROTOCOL,
893 &local_err);
894 if (blk == NULL) {
fef6070e 895 error_propagate(errp, local_err);
b8f45cdf 896 ret = -EIO;
fef6070e 897 goto out;
4ab15590
CL
898 }
899
b8f45cdf
KW
900 blk_set_allow_write_beyond_eof(blk, true);
901
ecd880d9
KW
902 /*
903 * Calculate matching total_size and geometry. Increase the number of
904 * sectors requested until we get enough (or fail). This ensures that
905 * qemu-img convert doesn't truncate images, but rather rounds up.
690cbb09 906 *
fb9245c2 907 * If the image size can't be represented by a spec conformant CHS geometry,
690cbb09
PL
908 * we set the geometry to 65535 x 16 x 255 (CxHxS) sectors and use
909 * the image size from the VHD footer to calculate total_sectors.
ecd880d9 910 */
fb9245c2
JC
911 if (force_size) {
912 /* This will force the use of total_size for sector count, below */
913 cyls = VHD_CHS_MAX_C;
914 heads = VHD_CHS_MAX_H;
915 secs_per_cyl = VHD_CHS_MAX_S;
916 } else {
917 total_sectors = MIN(VHD_MAX_GEOMETRY, total_size / BDRV_SECTOR_SIZE);
918 for (i = 0; total_sectors > (int64_t)cyls * heads * secs_per_cyl; i++) {
919 calculate_geometry(total_sectors + i, &cyls, &heads, &secs_per_cyl);
920 }
690cbb09
PL
921 }
922
923 if ((int64_t)cyls * heads * secs_per_cyl == VHD_MAX_GEOMETRY) {
924 total_sectors = total_size / BDRV_SECTOR_SIZE;
925 /* Allow a maximum disk size of approximately 2 TB */
926 if (total_sectors > VHD_MAX_SECTORS) {
24da78db 927 ret = -EFBIG;
fef6070e 928 goto out;
24da78db 929 }
690cbb09
PL
930 } else {
931 total_sectors = (int64_t)cyls * heads * secs_per_cyl;
932 total_size = total_sectors * BDRV_SECTOR_SIZE;
24da78db 933 }
ecd880d9 934
24da78db
CA
935 /* Prepare the Hard Disk Footer */
936 memset(buf, 0, 1024);
937
938 memcpy(footer->creator, "conectix", 8);
fb9245c2
JC
939 if (force_size) {
940 memcpy(footer->creator_app, "qem2", 4);
941 } else {
942 memcpy(footer->creator_app, "qemu", 4);
943 }
24da78db
CA
944 memcpy(footer->creator_os, "Wi2k", 4);
945
a4127c42
SH
946 footer->features = cpu_to_be32(0x02);
947 footer->version = cpu_to_be32(0x00010000);
24da78db 948 if (disk_type == VHD_DYNAMIC) {
a4127c42 949 footer->data_offset = cpu_to_be64(HEADER_SIZE);
24da78db 950 } else {
a4127c42 951 footer->data_offset = cpu_to_be64(0xFFFFFFFFFFFFFFFFULL);
24da78db 952 }
a4127c42 953 footer->timestamp = cpu_to_be32(time(NULL) - VHD_TIMESTAMP_BASE);
24da78db
CA
954
955 /* Version of Virtual PC 2007 */
a4127c42
SH
956 footer->major = cpu_to_be16(0x0005);
957 footer->minor = cpu_to_be16(0x0003);
3f3f20dc 958 footer->orig_size = cpu_to_be64(total_size);
03671ded 959 footer->current_size = cpu_to_be64(total_size);
a4127c42 960 footer->cyls = cpu_to_be16(cyls);
24da78db
CA
961 footer->heads = heads;
962 footer->secs_per_cyl = secs_per_cyl;
963
a4127c42 964 footer->type = cpu_to_be32(disk_type);
24da78db 965
1fe1fa51
CA
966#if defined(CONFIG_UUID)
967 uuid_generate(footer->uuid);
968#endif
24da78db 969
a4127c42 970 footer->checksum = cpu_to_be32(vpc_checksum(buf, HEADER_SIZE));
24da78db
CA
971
972 if (disk_type == VHD_DYNAMIC) {
b8f45cdf 973 ret = create_dynamic_disk(blk, buf, total_sectors);
24da78db 974 } else {
b8f45cdf 975 ret = create_fixed_disk(blk, buf, total_size);
24da78db
CA
976 }
977
fec9921f 978out:
b8f45cdf 979 blk_unref(blk);
fec9921f 980 g_free(disk_type_param);
f0ff243a 981 return ret;
57c7d9e5
AL
982}
983
72c6cc94
KW
984static int vpc_has_zero_init(BlockDriverState *bs)
985{
986 BDRVVPCState *s = bs->opaque;
e54835c0 987 VHDFooter *footer = (VHDFooter *) s->footer_buf;
72c6cc94 988
0d4cc3e7 989 if (be32_to_cpu(footer->type) == VHD_FIXED) {
9a4f4c31 990 return bdrv_has_zero_init(bs->file->bs);
72c6cc94
KW
991 } else {
992 return 1;
993 }
994}
995
6a0f9e82
FB
996static void vpc_close(BlockDriverState *bs)
997{
998 BDRVVPCState *s = bs->opaque;
97f1c45c 999 qemu_vfree(s->pagetable);
6a0f9e82 1000#ifdef CACHE
7267c094 1001 g_free(s->pageentry_u8);
6a0f9e82 1002#endif
612ff3d8
KW
1003
1004 migrate_del_blocker(s->migration_blocker);
1005 error_free(s->migration_blocker);
6a0f9e82
FB
1006}
1007
fec9921f
CL
1008static QemuOptsList vpc_create_opts = {
1009 .name = "vpc-create-opts",
1010 .head = QTAILQ_HEAD_INITIALIZER(vpc_create_opts.head),
1011 .desc = {
1012 {
1013 .name = BLOCK_OPT_SIZE,
1014 .type = QEMU_OPT_SIZE,
1015 .help = "Virtual disk size"
1016 },
1017 {
1018 .name = BLOCK_OPT_SUBFMT,
1019 .type = QEMU_OPT_STRING,
1020 .help =
1021 "Type of virtual hard disk format. Supported formats are "
1022 "{dynamic (default) | fixed} "
1023 },
fb9245c2
JC
1024 {
1025 .name = VPC_OPT_FORCE_SIZE,
1026 .type = QEMU_OPT_BOOL,
1027 .help = "Force disk size calculation to use the actual size "
1028 "specified, rather than using the nearest CHS-based "
1029 "calculation"
1030 },
fec9921f
CL
1031 { /* end of list */ }
1032 }
0e7e1989
KW
1033};
1034
5efa9d5a 1035static BlockDriver bdrv_vpc = {
4a411185
KW
1036 .format_name = "vpc",
1037 .instance_size = sizeof(BDRVVPCState),
c68b89ac 1038
72c6cc94
KW
1039 .bdrv_probe = vpc_probe,
1040 .bdrv_open = vpc_open,
1041 .bdrv_close = vpc_close,
1042 .bdrv_reopen_prepare = vpc_reopen_prepare,
c282e1fd 1043 .bdrv_create = vpc_create,
0e7e1989 1044
0cc84887
KW
1045 .bdrv_read = vpc_co_read,
1046 .bdrv_write = vpc_co_write,
1047 .bdrv_co_get_block_status = vpc_co_get_block_status,
c68b89ac 1048
97b00e28
PB
1049 .bdrv_get_info = vpc_get_info,
1050
fec9921f 1051 .create_opts = &vpc_create_opts,
72c6cc94 1052 .bdrv_has_zero_init = vpc_has_zero_init,
6a0f9e82 1053};
5efa9d5a
AL
1054
1055static void bdrv_vpc_init(void)
1056{
1057 bdrv_register(&bdrv_vpc);
1058}
1059
1060block_init(bdrv_vpc_init);